Rockwell-automation 1769-SM2 Compact I/O DSI/Modbus Communication Modu Manual de usuario

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Pagina 1 - Communications Module

PowerFlex 1769-SM2 Compact I/O DSI/Modbus Communications ModuleFirmware Version 1.xxxUser Manual

Pagina 2 - Important User Information

P-2 About This Manual You can view or download publications at http://literature.rockwellautomation.com. To order paper copies of technical document

Pagina 3 - Summary of Changes

6-20 MicroLogix 1500 Example Ladder Programs The format of the command data is: The Logic Status/Feedback read message instruction on rung 0002 is

Pagina 4

MicroLogix 1500 Example Ladder Programs 6-21 The write message instruction on rung 0004 for PowerFlex 70 drive Parameter 100 - [Jog Speed] is config

Pagina 5 - Table of Contents

6-22 MicroLogix 1500 Example Ladder Programs The read message instruction on rung 0005 for PowerFlex 70 drive Parameter 100 - [Jog Speed] is configu

Pagina 6

Chapter 7CompactLogix Example Ladder ProgramsThis chapter provides ladder examples for a CompactLogix controller used with a 1769-SM2 module in Sin

Pagina 7

7-2 CompactLogix Example Ladder Programs Figure 7.1 Example CompactLogix Single Mode System Arrangement PowerFlex 40 SettingsThe PowerFlex 40 dri

Pagina 8

CompactLogix Example Ladder Programs 7-3 The I/O configuration in RSLogix 5000 for the Single mode example program is: Refer to Chapter 4 for infor

Pagina 9 - About This Manual

7-4 CompactLogix Example Ladder Programs CompactLogix Example ProgramFigure 7.2 Example CompactLogix Ladder Logic Main Routine

Pagina 10 - Rockwell Automation Support

CompactLogix Example Ladder Programs 7-5 Figure 7.3 Example CompactLogix Single Mode Ladder Logic CH1 SubroutineThe following rungs display some o

Pagina 11

7-6 CompactLogix Example Ladder Programs Figure 7.3 Example CompactLogix Single Mode Ladder Logic CH1 Subroutine (Continued)This rung unlatches th

Pagina 12 - P-4 About This Manual

CompactLogix Example Ladder Programs 7-7 The read and write message instructions for PowerFlex 40 drive Parameter 78 - [Jog Frequency] are configure

Pagina 13 - Getting Started

About This Manual P-3 The following conventions are used throughout this manual:• Parameter names are shown in the format Parameter xx - [*]. The xx

Pagina 14 - Features

7-8 CompactLogix Example Ladder Programs Write Message (Rung 17) Single Mode Example Program TagsThe following tags are used to contain the input an

Pagina 15 - 1769-SM2

CompactLogix Example Ladder Programs 7-9

Pagina 16

7-10 CompactLogix Example Ladder Programs Since CH2 and CH3 ladder routines are similar to the CH1 routine, they are not provided. The ladder exam

Pagina 17 - HVAC adapters

CompactLogix Example Ladder Programs 7-11 Figure 7.4 Example CompactLogix Multi-Drive Mode System Arrangement PowerFlex 40 Settings The PowerFlex

Pagina 18 - Required Equipment

7-12 CompactLogix Example Ladder Programs 20-COMM-H Settings The 20-COMM-H adapter used in the example program has the following parameter and switc

Pagina 19 - Safety Precautions

CompactLogix Example Ladder Programs 7-13 Refer to Chapter 4 for information about the I/O image, Module Enable/Status, Logic Command/Status, and R

Pagina 20

7-14 CompactLogix Example Ladder Programs CompactLogix Multi-Drive Mode Example Program Figure 7.5 Example CompactLogix Multi-Drive Ladder Logic

Pagina 21 - Quick Start

CompactLogix Example Ladder Programs 7-15 Figure 7.5 Example CompactLogix Multi-Drive Ladder Logic Main Routine (Continued)Channel 2 Drive 0 Subro

Pagina 22 - Status Indicators

7-16 CompactLogix Example Ladder Programs Figure 7.5 Example CompactLogix Multi-Drive Ladder Logic Main Routine (Continued)14CH2_Drv0_Valid_Data&l

Pagina 23 - Installing the Module

CompactLogix Example Ladder Programs 7-17 Figure 7.6 Example CompactLogix Multi-Drive Ladder Logic CH1 Drive 0 Subroutine

Pagina 24 - Removing Power

P-4 About This Manual Notes:

Pagina 25

7-18 CompactLogix Example Ladder Programs Figure 7.6 Example CompactLogix Multi-Drive Ladder Logic CH1 Drive 0 Subroutine (Continued)This rung unl

Pagina 26

CompactLogix Example Ladder Programs 7-19 The read and write message instructions for PowerFlex 40 drive Parameter 78 - [Jog Frequency] are configur

Pagina 27

7-20 CompactLogix Example Ladder Programs A “17486” equates to Parameter 78 (17486 - 17408 = 78), since 17408 is Instance 0 in the drive (17409 is P

Pagina 28 - Mounting the Module

CompactLogix Example Ladder Programs 7-21 Multi-Drive Example Program Tags The following tags are used to contain the input and output data to/from

Pagina 29 - ±0.4 mm (0.016 in.)

7-22 CompactLogix Example Ladder Programs CH3 Modbus RTU Master Subroutine Example In Multi-Drive mode, any channel can be configured for Modbus RTU

Pagina 30 - DIN Rail Mounting

CompactLogix Example Ladder Programs 7-23 Figure 7.7 Example CompactLogix Modbus RTU Ladder Logic CH3 Subroutine (Continued)Write Parameter 100 [J

Pagina 31

7-24 CompactLogix Example Ladder Programs The Logic Command/Reference write message instruction on rung 0 is configured as follows: The format of t

Pagina 32 - Single Mode

CompactLogix Example Ladder Programs 7-25 The Logic Status/Feedback read message instruction on rung 2 is configured as follows: The format of the

Pagina 33

7-26 CompactLogix Example Ladder Programs The write message instruction on rung 4 for PowerFlex 70 drive Parameter 100 - [Jog Speed] is configured a

Pagina 34 - Grounding the Module

CompactLogix Example Ladder Programs 7-27 The format of the command and response data is: For additional information about Modbus RTU Master messa

Pagina 35 - To Drive 1 To Drive 2

Chapter 1Getting StartedThe 1769-SM2 Compact I/O to DSI module provides a Compact I/O connection for PowerFlex 4-Class drives. It can be used with

Pagina 36 - Applying Power

7-28 CompactLogix Example Ladder Programs Notes:

Pagina 37

Chapter 8ControlLogix w/1769-ADN DeviceNet Example Ladder ProgramThis chapter provides an example of a ControlLogix controller and 1769-ADN Remote

Pagina 38 - 2-16 Installing the Module

8-2 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Explicit messaging (parameter read/write) capability varies between the RSLogix softwar

Pagina 39 - Configuring the Module

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-3 5. In the Add New RSLinx Driver screen, use the default name or type a new name and cli

Pagina 40 - Configuration Tools

8-4 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Figure 8.3 Example DeviceNet Network To configure the 1769-ADN for use with the exam

Pagina 41 - Controller Mode

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-5 Figure 8.5 1769-ADN Adapter Module Configuration Tab Screen The EDS file for the 176

Pagina 42 - Before v6.30

8-6 ControlLogix w/1769-ADN DeviceNet Example Ladder Program 4. Select the Advanced Parameters tab (Figure 8.7). Refer to Chapter 4, Understanding t

Pagina 43

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-7 Parameters can be adjusted by double-clicking on the desired parameter. Default setting

Pagina 44

8-8 ControlLogix w/1769-ADN DeviceNet Example Ladder Program The EDS file for the 1769-SM2 module is needed to configure the remote 1769-ADN DeviceN

Pagina 45

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-9 3. Click Next > to display the EDS Wizard Task screen (Figure 8.12). Select Register

Pagina 46

1-2 Getting Started The 1769-SM2 Compact I/O to DSI module features include:• Three Compact I/O connection channels for PowerFlex 4-Class drives. Up

Pagina 47

8-10 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Figure 8.14 EDS Wizard Installation Test Screen 6. The EDS Wizard Change Graphic Im

Pagina 48

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-11 Figure 8.16 EDS Wizard Final Task Summary Screen 8. The EDS Wizard is now completed

Pagina 49

8-12 ControlLogix w/1769-ADN DeviceNet Example Ladder Program The PowerFlex 40 drives used in the example program have the following parameter setti

Pagina 50 - Parameter Mode

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-13 ControlLogix w/1769-ADN Example ProgramFigure 8.18 Example ControlLogix Ladder Logic

Pagina 51 - VALUE LIMITS SEL 

8-14 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Figure 8.18 Example ControlLogix Ladder Logic Main Routine (Continued)This rung enab

Pagina 52

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-15 Figure 8.19 Example ControlLogix Ladder Logic CH1 Subroutine

Pagina 53 - Changing the Idle Action

8-16 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Figure 8.19 Example ControlLogix Ladder Logic CH1 Subroutine (Continued)11CH1_Forwar

Pagina 54

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-17 Figure 8.20 Example ControlLogix Ladder Logic CH2 Subroutine

Pagina 55 - Selecting the RTU Format

8-18 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Figure 8.20 Example ControlLogix Ladder Logic CH2 Subroutine (Continued)11CH2_Forwar

Pagina 56 - Setting the RTU Tx Delay Time

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-19 Figure 8.21 Example ControlLogix Ladder Logic CH3 Subroutine

Pagina 57

Getting Started 1-3 Single mode is a one-to-one connection, where a channel is connected to a single PowerFlex 4-Class drive (Figure 1.2).Figure 1.2

Pagina 58 - Resetting the Module

8-20 ControlLogix w/1769-ADN DeviceNet Example Ladder Program Figure 8.21 Example ControlLogix Ladder Logic CH3 Subroutine (Continued)11CH3_Forwar

Pagina 59 - Configuring the Module 3-21

ControlLogix w/1769-ADN DeviceNet Example Ladder Program 8-21 In this example program, the following controller tags are used:Figure 8.22 Controll

Pagina 60 - Flash Updating the Module

8-22 ControlLogix w/1769-ADN DeviceNet Example Ladder Program An example of Input/Output values are shown below: Figure 8.23 1769-SM2 Input Data

Pagina 61 - Understanding the I/O Image

Chapter 9TroubleshootingThis chapter provides information for troubleshooting potential problems with 1769-SM2 module and network. The 1769-SM2 mo

Pagina 62 - Module Control Word

9-2 Troubleshooting The MODULE status indicator is a bicolor red and green LED. MODULE Status IndicatorStatus Cause Corrective ActionOff The module

Pagina 63 - Module Status Word

Troubleshooting 9-3 The CH1, CH2, and CH3 status indicators are bicolor red and green LEDs. CH1…CH3 Status IndicatorsStatus Cause Corrective Action

Pagina 64 - Using Reference/Feedback

9-4 Troubleshooting Diagnostic items are provided for each respective channel.The following diagnostic items can be accessed using DriveExplorer v3.

Pagina 65 - Chapter 5

Troubleshooting 9-5 9 Drv 1 Logic Sts Current value of the product-specific Logic Status being received from Drive 1 by this module.10 Drv 1 Feedbac

Pagina 66 - Formatting Explicit Messages

9-6 Troubleshooting The module has an event queue to record significant events that occur in the operation of the module. When such an event occurs,

Pagina 67

Troubleshooting 9-7 7-9 Reserved —DSI Events10 Slave Detected The module detected that the slave has been connected.11 Slave Removed The module dete

Pagina 68

1-4 Getting Started Multi-Drive mode enables increased connectivity, where one to five PowerFlex 4-Class drives can be connected per channel. All of

Pagina 69

9-8 Troubleshooting 52 Msg Ctrl Open The module has begun receiving Client-Server Control messages (the Client-Server Control Timeout was previously

Pagina 70

Appendix ASpecificationsAppendix A presents the specifications for the module. Topic PageCommunicationsA-1Electrical A-1Mechanical A-1Environmenta

Pagina 71

A-2 Specifications NOTE: In a domestic environment this product may cause radio interference in which case supplementary mitigation measures may be

Pagina 72

Appendix BModule ParametersAppendix B provides information about the 1769-SM2 module parameters. The parameters in the module are numbered consecu

Pagina 73

B-2 Module Parameters 03 [Reset Module]No action if set to “0” (Ready). Resets the module if set to “1” (Reset Module). Restores the module to its f

Pagina 74

Module Parameters B-3 08 [DSI I/O Act 1]Displays the CH1 drives that are active in Multi-Drive mode.Default: xxx0 0000Bit Values: 0 = Drive Active1

Pagina 75

B-4 Module Parameters 17 [RTU Tx Delay 1]Sets the CH1 inter-frame delay used to delay the sending of a transmit packet when the module is in Multi-D

Pagina 76

Module Parameters B-5 23 [DSI I/O Act 2]Displays the CH2 drives that are active in Multi-Drive mode.Default: xxx0 0000Bit Values: 0 = Drive Active1

Pagina 77

B-6 Module Parameters 32 [RTU Tx Delay 2]Sets the CH2 inter-frame delay used to delay the sending of a transmit packet when the module is in Multi-D

Pagina 78

Module Parameters B-7 38 [DSI I/O Act 3]Displays the CH3 drives that are active in Multi-Drive mode.Default: xxx0 0000Bit Values: 0 = Drive Active1

Pagina 79

Getting Started 1-5 In Multi-Drive mode, any channel can be configured for “RTU Master” operation (Figure 1.4). This enables connection of up to 31

Pagina 80

B-8 Module Parameters 47 [RTU Tx Delay 3]Sets the CH3 inter-frame delay used to delay the sending of a transmit packet when the module is in Multi-D

Pagina 81

Appendix CCIP/DSI ObjectsAppendix C presents information about the CIP and DSI objects that can be accessed using Explicit Messages.For information

Pagina 82 - MicroLogix 1500 Controller

C-2 CIP/DSI Objects Supported Data TypesData Type DescriptionBYTE 8-bit unsigned integerWORD 16-bit unsigned integerDWORD 32-bit unsigned integerLWO

Pagina 83

CIP/DSI Objects C-3 Class CodeServicesClass AttributesInstance AttributesCIP Identity ObjectHexadecimal Decimal0x01 1Service Code Implemented for: S

Pagina 84

C-4 CIP/DSI Objects Class CodeInstancesThe parameters for the DSI devices can be accessed using the instance-offset encoding shown in the table belo

Pagina 85

CIP/DSI Objects C-5 Instance AttributesCIP Parameter Object (Continued)Attribute IDAccess RuleName Data Type Description1(1)(1)Access rule is define

Pagina 86

C-6 CIP/DSI Objects ServicesCIP Parameter Object (Continued)Service Code Implemented for: Service NameClass Instance0x01 Yes Yes Get_Attributes_All0

Pagina 87

CIP/DSI Objects C-7 Class CodeServicesInstancesThe number of instances depends on the number of components in the device. The total number of compon

Pagina 88

C-8 CIP/DSI Objects Class Attributes (Continued) DSI Device Object (Continued)Attribute IDAccess RuleName Data Type Description3 Get Product Series

Pagina 89

CIP/DSI Objects C-9 Instance AttributesDSI Device Object (Continued)Attribute IDAccess RuleName Data Type Description3 Get Component Name STRING[32]

Pagina 90

1-6 Getting Started Benefits of Multi-Drive mode include:• Lower hardware costs. Only one 1769-SM2 is needed for up to five PowerFlex 4-Class drives

Pagina 91

C-10 CIP/DSI Objects Class CodeInstancesThe number of instances depends on the number of parameters in the device. The total number of parameters ca

Pagina 92

CIP/DSI Objects C-11 Instance AttributesDSI Parameter Object (Continued)Attribute IDAccess RuleName Data Type Description7 Get DSI Online Read FullS

Pagina 93

C-12 CIP/DSI Objects Descriptor AttributesDSI Parameter Object (Continued)Bit Name Description0 Data Type (Bit 1) Right bit is least significant bit

Pagina 94

CIP/DSI Objects C-13 Descriptor Attributes (Continued) Formulas for ConvertingDisplay Value = ((Internal Value + Offset) x Multiplier x Base) / (Di

Pagina 95

C-14 CIP/DSI Objects Class CodeProducts such as PowerFlex drives use this object for faults. Modules use this object for events.ServicesInstancesThe

Pagina 96

CIP/DSI Objects C-15 Class Attributes (Continued) Instance AttributesDSI Fault Object (Continued)Attribute IDAccess RuleName Data Type Description5

Pagina 97

C-16 CIP/DSI Objects Class CodeServicesInstancesThe number of instances depends on the maximum number of diagnostic items in the device. The total n

Pagina 98

CIP/DSI Objects C-17 Instance AttributesDSI Diagnostic Object (Continued)Attribute IDAccess RuleName Data Type Description0 Get Full/All Info STRUCT

Pagina 99

C-18 CIP/DSI Objects Notes:

Pagina 100

Appendix DPowerFlex 4-Class Drives Logic Command/Status WordsAppendix D provides the definitions of the Logic Command/Logic Status words that are u

Pagina 101

Getting Started 1-7 User-Supplied EquipmentTo install and configure the 1769-SM2 module, you must supply: Please read the following safety precauti

Pagina 102

D-2 PowerFlex 4-Class Drives Logic Command/Status Words Logic Status WordLogic Bits1514131211109876543210Status Descriptionx Ready 0 = Not Ready1 =

Pagina 103 - Programs

GlossaryC CIP (Common Industrial Protocol)CIP is the transport and application layer protocol used for messaging over EtherNet/IP, ControlNet, and

Pagina 104 - 1769-SM2 Settings

Glossary-2 DSI PeripheralA device that provides an interface between DSI and a network or user. Peripheral devices are also referred to as “adapters

Pagina 105

Glossary-3 H HIM (Human Interface Module)A device that can be used to configure and control a drive. PowerFlex 4-Class HIMs (22-HIM-A3 or 22-HIM-C2S

Pagina 106 - CompactLogix Example Program

Glossary-4 P PCCC (Programmable Controller Communications Command)PCCC is the protocol used by some controllers to communicate with devices on a net

Pagina 107

Glossary-5 S ScannerA scanner is a separate module (of a multi-module controller) or a built-in component (of a single-module controller) that provi

Pagina 108

Glossary-6 Notes:

Pagina 109 - Read Message (Rung 14)

IndexAadapter, see moduleapplying power to the module, 2-14assembling module to the controller, 2-5attentions, 1-7Bbaud rate, see RTU baud ratebit

Pagina 110 - Write Message (Rung 17)

Index-2 ControlLogix w/1769-ADN example ladder program1769-SM2input/output data, 8-22registering the EDS file, 8-8settings, 8-12controller tags, 8-2

Pagina 111

Index-3 HHIM (Human Interface Module)accessing parameters with, 3-13definition, G-3hold lastconfiguring the module for, 3-15definition, G-3II/Oconfi

Pagina 112 - Multi-Drive Mode

Important User InformationSolid state equipment has operational characteristics differing from those of electromechanical equipment. Safety Guidelines

Pagina 113 - PowerFlex 70 Setting

1-8 Getting Started !ATTENTION: Risk of injury or equipment damage exists. Parameters 04 - [Idle Action 1], 19 - [Idle Action 2], and 34 - [Idle A

Pagina 114 - 20-COMM-H Settings

Index-4 moduleapplying power, 2-14assembling to the controller, 2-5compatible products, 1-6components, 1-1connecting drives to, 2-10control word, 4-

Pagina 115

Index-5 related documentation, P-1removing power from the module, 2-2replacing module within a system, 2-9Reset Module parameter, B-2resetting the m

Pagina 116

Index-6

Pagina 118

www.rockwellautomation.comAmericas: Rockwell Automation, 1201 South Second Street, Milwaukee, WI 53204-2496 USA, Tel: (1) 414.382.2000, Fax: (1) 4

Pagina 119

Getting Started 1-9 This section is provided to help experienced users quickly start using the 1769-SM2 Compact I/O to DSI module. If you are unsure

Pagina 120

1-10 Getting Started The module uses four status indicators to report its operating status. They can be viewed on the front of the module (Figure 1.

Pagina 121

Chapter 2Installing the ModuleThis chapter provides instructions for installing the 1769-SM2 as an expansion I/O module on MicroLogix 1500 and Comp

Pagina 122

2-2 Installing the Module !ATTENTION: Risk of equipment damage exists. The 1769-SM2 module contains ESD (Electrostatic Discharge) sensitive parts

Pagina 123 - CH1 Drive 0:

Installing the Module 2-3 Before installing the module, make sure its Configuration Mode Switch is correctly set. See Configuration Methods on page

Pagina 124 - Modbus RTU operation

2-4 Installing the Module Before installing the module, set its Operating Mode Switch (SW2 in Figure 2.1) for Single or Multi-Drive operation. All c

Pagina 125

Installing the Module 2-5 The 1769-SM2 module can be attached to adjacent controller modules before or after mounting. For mounting instructions, se

Pagina 126

2-6 Installing the Module 7. Attach an end cap terminator (F) to the last module in the system by using the tongue-and-groove slots as before.8. Loc

Pagina 127

Installing the Module 2-7 Panel Mounting Using the Dimensional DrawingNOTE: All dimensions are in mm (inches). Hole spacing tolerance is ±0.4 mm (0.

Pagina 128

Summary of ChangesThe information below summarizes the changes made to this manual since version 1769-UM013B-EN-P (January 2006): Description Page

Pagina 129

2-8 Installing the Module Figure 2.5 1769-SM2 Module with Remote 1769-Based Adapter Panel Mounting Procedure Using Module as a TemplateThe follow

Pagina 130

Installing the Module 2-9 The 1769-SM2 module can be replaced while the system is mounted to a panel (or DIN rail). 1. Remove power.2. Unplug the c

Pagina 131 - Example Ladder Program

2-10 Installing the Module 8. Connect the 1769-SM2 module and adjacent modules together by locking (fully left) the bus levers on the 1769-SM2 modul

Pagina 132 - Using RSLinx Classic

Installing the Module 2-11 When connecting a drive to the channel port using 22-RJ45CBL-C20 communications cable, the above drive parameters do not

Pagina 133 - Using RSNetWorx for DeviceNet

2-12 Installing the Module The 1769-SM2 module is intended to be mounted to a well-grounded mounting surface such as a metal panel. Additional groun

Pagina 134 - Setting Up the 1769-ADN

Installing the Module 2-13 Unshielded Connector Grounding RequirementsWhen using twisted pair network wiring with unshielded AK-U0-RJ45-TB2P connect

Pagina 135

2-14 Installing the Module Some type of strain relief should be provided for the communication cables within 12 inches (305 mm) of the 1769-SM2 modu

Pagina 136

Installing the Module 2-15 Status indicators for the communication module can be viewed on the front of the module (Figure 2.8) after power has been

Pagina 137

2-16 Installing the Module Notes:

Pagina 138

Chapter 3Configuring the ModuleThis chapter provides instructions and information for setting the parameters in the 1769-SM2 module. For a list of

Pagina 140

3-2 Configuring the Module Multi-Drive ModeWhen the module is in Multi-Drive mode, the I/O image is comprised of a maximum of 31 words (Table 3.B).T

Pagina 141

Configuring the Module 3-3 The 1769-SM2 module has two methods of configuration, which are determined by the Configuration Mode Switch (SW1 in Figur

Pagina 142

3-4 Configuring the Module The configuration data directly correlates to the module parameters. Refer to Appendix B for more information.Entering Mi

Pagina 143

Configuring the Module 3-5 2. Enter the Series letter of the 1769-SM2, which can be determined by checking the data nameplate label on the module (i

Pagina 144

3-6 Configuring the Module 3. Click on the Chan. 1 tab (Figure 3.3) and set the I/O Config data area accordingly. In this example, the 1769-SM2 is c

Pagina 145

Configuring the Module 3-7 Figure 3.4 Chan. 1 Tab Data Screen with Idle Action - Send Flt Cfg Enabled 4. For each additional channel being used,

Pagina 146

3-8 Configuring the Module See Table 3.C for descriptions of these configuration words.5. Click OK when finished. The MicroLogix 1500 will download

Pagina 147

Configuring the Module 3-9 3. Click OK to apply the changes and close the screen. However, if you click Apply or leave this tab to go to another tab

Pagina 148

3-10 Configuring the Module Figure 3.8 Select Module Type Screen 3. After the Module Properties screen (Figure 3.9) appears, enter a name for the

Pagina 149

Configuring the Module 3-11 Figure 3.10 Module Properties Last Screen 5. The treeview (Figure 3.11) now shows the 1769-MODULE.Figure 3.11 RSLog

Pagina 150

Table of ContentsPreface About This ManualRelated Documentation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P-1Rockwell Automation S

Pagina 151 - Example Program Data Table

3-12 Configuring the Module When the Configuration Mode Switch (SW1 in Figure 2.1) is in the PARAM (Parameter) position, the 1769-SM2 uses its inter

Pagina 152

Configuring the Module 3-13 When using the 1769-SM2 module in Single mode, the optional, external PowerFlex 4-Class HIM (Human Interface Module) can

Pagina 153 - Troubleshooting

3-14 Configuring the Module The I/O configuration sets the number of drives that are connected to each channel. When the 1769-SM2 module is used in

Pagina 154 - MODULE Status Indicator

Configuring the Module 3-15 By default, when the controller is idle, the drive responds by faulting when using I/O from the 1769-SM2 module. You can

Pagina 155 - CH1…CH3 Status Indicators

3-16 Configuring the Module Setting the Fault Configuration ParametersIf you set Parameter 04 - [Idle Action 1], 19 - [Idle Action 2], or 34 - [Idl

Pagina 156

Configuring the Module 3-17 In Multi-Drive mode, any module channel can be configured for RTU Master operation by setting Parameter 07 - [DSI I/O Cf

Pagina 157 - Troubleshooting 9-5

3-18 Configuring the Module Figure 3.18 Example RTU Format HIM Screen for CH1 Drives 2. Reset the module (see Resetting the Module on page 3-20).Se

Pagina 158 - Viewing and Clearing Events

Configuring the Module 3-19 Figure 3.20 Example RTU Tx Delay HIM Screen for CH1 Drives 2. Reset the module (see Resetting the Module on page 3-20).

Pagina 159 - Troubleshooting 9-7

3-20 Configuring the Module Changes to switch settings and some module parameters require that you reset the 1769-SM2 module before the new settings

Pagina 160 - 9-8 Troubleshooting

Configuring the Module 3-21 The following parameters provide information about the status of the 1769-SM2 module. You can view these parameters at

Pagina 161 - Specifications

ii Table of Contents Chapter 4 Understanding the I/O ImageModule Control Word . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-2Modul

Pagina 162 - DSI Cable Requirements

3-22 Configuring the Module The adapter can be flash updated over the network (via EtherNet/IP using DriveExplorer Full only) or serially through a

Pagina 163 - Module Parameters

Chapter 4Understanding the I/O ImageThis chapter provides information and examples of the 1769-SM2 module I/O image, including Module Control/Statu

Pagina 164 - B-2 Module Parameters

4-2 Understanding the I/O Image needed. Likewise, five PowerFlex drives on CH1 in Multi-Drive mode using control would require 11 words of I/O. Tab

Pagina 165 - Module Parameters B-3

Understanding the I/O Image 4-3 The Module Status Word (input word 0) is used for all channels, where: The data valid bits (0…14) can be used in th

Pagina 166 - B-4 Module Parameters

4-4 Understanding the I/O Image The Logic Command is a 16-bit word of control data produced by the controller and consumed by the 1769-SM2 module. T

Pagina 167 - Module Parameters B-5

Chapter 5Understanding Explicit MessagingThis chapter provides information about explicit messaging. Explicit messaging is used to read/write data

Pagina 168 - B-6 Module Parameters

5-2 Understanding Explicit Messaging For RSLogix 500, format each message as shown in Figure 5.1 and see Table 5.A for a description of the data req

Pagina 169 - Module Parameters B-7

Understanding Explicit Messaging 5-3 Figure 5.2 RSLogix 5000 Explicit Message Setup Screen Table 5.B RSLogix 5000 Explicit Message Configurati

Pagina 170 - B-8 Module Parameters

5-4 Understanding Explicit Messaging Table 5.C shows the instance numbers to be used for message configuration: Instance “1” typically equates to p

Pagina 171 - CIP/DSI Objects

Understanding Explicit Messaging 5-5 RSLogix 500 Parameter Read/Write ExamplesIn this example, a read and a write of PowerFlex 40 drive Parameter 78

Pagina 172 - Supported Data Types

Table of Contents iii Appendix B Module ParametersAbout Parameter Numbers. . . . . . . . . . . . . . . . . . . . . . . . . . . B-1Parameter List .

Pagina 173 - CIP Identity Object

5-6 Understanding Explicit Messaging The RSLogix 500 Message Configuration example screen to write to a parameter is shown in Figure 5.4. It is assu

Pagina 174 - CIP Parameter Object

Understanding Explicit Messaging 5-7 RSLogix 5000 Parameter Read/Write ExamplesIn this example, a read and a write of PowerFlex 40 drive Parameter 7

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5-8 Understanding Explicit Messaging The RSLogix 5000 Message Configuration example screen to write to a parameter is shown in Figure 5.6. It is ass

Pagina 176 - Services

Understanding Explicit Messaging 5-9 In Multi-Drive mode, any channel can be configured for Modbus RTU Master operation to communicate with a variet

Pagina 177 - DSI Device Object

5-10 Understanding Explicit Messaging Figure 5.7 RSLogix 500 Modbus RTU Master Message Setup Screen Table 5.D RSLogix 500 Modbus RTU Master Me

Pagina 178 - DSI Device Object (Continued)

Understanding Explicit Messaging 5-11 Figure 5.8 RSLogix 5000 Modbus RTU Master Message Setup Screen Table 5.E RSLogix 5000 Modbus RTU Master

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5-12 Understanding Explicit Messaging RSLogix 500 Modbus RTU Master Write Message ExampleFigure 5.9 shows an example Modbus RTU Master write message

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Understanding Explicit Messaging 5-13 RSLogix 500 Modbus RTU Master Read Message ExampleFigure 5.10 shows an example Modbus RTU Master read message

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5-14 Understanding Explicit Messaging RSLogix 5000 Modbus RTU Master Write Message ExampleFigure 5.11 shows an example Modbus RTU Master write messa

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Understanding Explicit Messaging 5-15 RSLogix 5000 Modbus RTU Master Read Message ExampleFigure 5.12 shows an example Modbus RTU Master read message

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5-16 Understanding Explicit Messaging Notes:

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Chapter 6MicroLogix 1500 Example Ladder ProgramsThis chapter provides ladder examples for a MicroLogix 1500 controller used with a 1769-SM2 module

Pagina 186 - DSI Diagnostic Object

6-2 MicroLogix 1500 Example Ladder Programs Figure 6.1 Example MicroLogix 1500 Single Mode System Arrangement PowerFlex 40 Drive SettingsThe Powe

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MicroLogix 1500 Example Ladder Programs 6-3 The I/O configuration in RSLogix 500 v6.30 (or higher) for the Single mode example program is: Refer to

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6-4 MicroLogix 1500 Example Ladder Programs MicroLogix 1500 Example Program Figure 6.2 Example MicroLogix 1500 Single Mode Ladder Logic Main Routi

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MicroLogix 1500 Example Ladder Programs 6-5 Figure 6.3 Example MicroLogix 1500 Single Mode Ladder Logic CH1 Subroutine1769-SM2 Channel 1 Subroutin

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6-6 MicroLogix 1500 Example Ladder Programs Figure 6.3 Example MicroLogix 1500 Single Mode Ladder Logic CH1 Subroutine (Continued)This rung unlat

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MicroLogix 1500 Example Ladder Programs 6-7 The read and write message instructions for PowerFlex 40 drive Parameter 78 - [Jog Frequency] are config

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6-8 MicroLogix 1500 Example Ladder Programs An example of data table values are shown below: A value of “200” for the Reference equates to 20.0 Hz.

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MicroLogix 1500 Example Ladder Programs 6-9 Figure 6.4 Example MicroLogix 1500 Multi-Drive Mode System Arrangement PowerFlex 40 Settings The Powe

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PrefaceAbout This Manual Topic PageRelated DocumentationP-1Conventions Used in this Manual P-3Rockwell Automation Support P-2Related DocumentationF

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6-10 MicroLogix 1500 Example Ladder Programs 20-COMM-H Settings The 20-COMM-H adapter used in the example program has the following parameter and sw

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MicroLogix 1500 Example Ladder Programs 6-11 The I/O configuration in RSLogix 500 v6.30 (or higher) for the Multi-Drive mode example program is: Re

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6-12 MicroLogix 1500 Example Ladder Programs MicroLogix 1500 Multi-Drive Mode Example Program Figure 6.5 Example MicroLogix 1500 Multi-Drive Ladd

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MicroLogix 1500 Example Ladder Programs 6-13 Figure 6.5 Example MicroLogix 1500 Multi-Drive Ladder Logic Main Routine (Continued)Channel 2 Drive 2

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6-14 MicroLogix 1500 Example Ladder Programs Figure 6.6 Example MicroLogix 1500 Multi-Drive Ladder Logic CH1 Drive 0 Subroutine1769-SM2 Channel 1

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MicroLogix 1500 Example Ladder Programs 6-15 Figure 6.6 Example MicroLogix 1500 Multi-Drive Ladder Logic CH1 Drive 0 Subroutine (Continued)This r

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6-16 MicroLogix 1500 Example Ladder Programs The read and write message instructions for PowerFlex 40 drive Parameter 78 - [Jog Frequency] are confi

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MicroLogix 1500 Example Ladder Programs 6-17 An example of data table values are shown below: A value of “101” for the Reference equates to 10.1 H

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6-18 MicroLogix 1500 Example Ladder Programs CH3 Modbus RTU Master Subroutine Example In Multi-Drive mode, any channel can be configured for Modbus

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MicroLogix 1500 Example Ladder Programs 6-19 The Logic Command/Reference write message instruction on rung 0000 is configured as follows: Figure 6.

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